Abstract
AbstractPhytohormones are key factors in plant responsiveness to abiotic and biotic stresses, and maintaining hormone homeostasis is critically important during stress responses. Cut rose (Rosa hybrida) flowers experience dehydration stress during postharvest handling, and jasmonic acid (JA) levels change as a result of this stress. However, how JA is involved in dehydration tolerance remains unclear. We investigated the functions of the JA- and dehydration-induced RhHB1 gene, which encodes a homeodomain-leucine zipper I γ-clade transcription factor, in rose flowers. Silencing RhHB1 decreased petal dehydration tolerance and resulted in a persistent increase in JA-Ile content and reduced dehydration tolerance. An elevated JA-Ile level had a detrimental effect on rose petal dehydration tolerance. RhHB1 was shown to lower the transient induction of JA-Ile accumulation in response to dehydration. In addition to transcriptomic data, we obtained evidence that RhHB1 suppresses the expression of the lipoxygenase 4 (RhLOX4) gene by directly binding to its promoter both in vivo and in vitro. We propose that increased JA-Ile levels weaken the capacity for osmotic adjustment in petal cells, resulting in reduced dehydration tolerance. In conclusion, a JA feedback loop mediated by an RhHB1/RhLOX4 regulatory module provides dehydration tolerance by fine-tuning bioactive JA levels in dehydrated flowers.
Publisher
Oxford University Press (OUP)
Subject
Horticulture,Plant Science,Genetics,Biochemistry,Biotechnology
Reference81 articles.
1. Agalou, A. et al. A genome-wide survey of HD-Zip genes in rice and analysis of drought-responsive family members. Plant Mol. Biol. 66, 87–103 (2008).
2. Gray, S. B. & Brady, S. M. Plant developmental responses to climate change. Developmental Biol. 419, 64–77 (2016).
3. Wu, C. T. An overview of postharvest biology and technology of fruits and vegetables. Technology on Reducing Post 2–11 (2010).
4. Parsons, E. P. et al. Fruit cuticle lipid composition and water loss in a diverse collection of pepper (Capsicum). Physiologia Plant. 149, 160–174 (2013).
5. Yahia, E. M., Fonseca, J. M. & Kitinoja, L. in Postharvest Technology of Perishable Horticultural Commodities (ed. Yahia, E. M.) Ch. 2 (Woodhead, 2019).
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